EP2424048B1 - Fiche de connexion et dispositif de liaison pour la fabrication d'une liaison amovible - Google Patents

Fiche de connexion et dispositif de liaison pour la fabrication d'une liaison amovible Download PDF

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Publication number
EP2424048B1
EP2424048B1 EP11171810.2A EP11171810A EP2424048B1 EP 2424048 B1 EP2424048 B1 EP 2424048B1 EP 11171810 A EP11171810 A EP 11171810A EP 2424048 B1 EP2424048 B1 EP 2424048B1
Authority
EP
European Patent Office
Prior art keywords
housing part
housing
plug
socket
sealing element
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP11171810.2A
Other languages
German (de)
English (en)
Other versions
EP2424048A2 (fr
EP2424048A3 (fr
EP2424048C0 (fr
Inventor
Falco Lehmann
Uwe Pötschke
Günter Wäller
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Telegaertner Karl Gaertner GmbH
Original Assignee
Telegaertner Karl Gaertner GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Telegaertner Karl Gaertner GmbH filed Critical Telegaertner Karl Gaertner GmbH
Publication of EP2424048A2 publication Critical patent/EP2424048A2/fr
Publication of EP2424048A3 publication Critical patent/EP2424048A3/fr
Application granted granted Critical
Publication of EP2424048C0 publication Critical patent/EP2424048C0/fr
Publication of EP2424048B1 publication Critical patent/EP2424048B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/46Bases; Cases
    • H01R13/52Dustproof, splashproof, drip-proof, waterproof, or flameproof cases
    • H01R13/5205Sealing means between cable and housing, e.g. grommet
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/62Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
    • H01R13/622Screw-ring or screw-casing
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/24Coupling light guides
    • G02B6/36Mechanical coupling means
    • G02B6/38Mechanical coupling means having fibre to fibre mating means
    • G02B6/3807Dismountable connectors, i.e. comprising plugs
    • G02B6/381Dismountable connectors, i.e. comprising plugs of the ferrule type, e.g. fibre ends embedded in ferrules, connecting a pair of fibres
    • G02B6/3816Dismountable connectors, i.e. comprising plugs of the ferrule type, e.g. fibre ends embedded in ferrules, connecting a pair of fibres for use under water, high pressure connectors
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/24Coupling light guides
    • G02B6/36Mechanical coupling means
    • G02B6/38Mechanical coupling means having fibre to fibre mating means
    • G02B6/3807Dismountable connectors, i.e. comprising plugs
    • G02B6/3873Connectors using guide surfaces for aligning ferrule ends, e.g. tubes, sleeves, V-grooves, rods, pins, balls
    • G02B6/3874Connectors using guide surfaces for aligning ferrule ends, e.g. tubes, sleeves, V-grooves, rods, pins, balls using tubes, sleeves to align ferrules
    • G02B6/3878Connectors using guide surfaces for aligning ferrule ends, e.g. tubes, sleeves, V-grooves, rods, pins, balls using tubes, sleeves to align ferrules comprising a plurality of ferrules, branching and break-out means
    • G02B6/3879Linking of individual connector plugs to an overconnector, e.g. using clamps, clips, common housings comprising several individual connector plugs
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/24Coupling light guides
    • G02B6/36Mechanical coupling means
    • G02B6/38Mechanical coupling means having fibre to fibre mating means
    • G02B6/3807Dismountable connectors, i.e. comprising plugs
    • G02B6/3897Connectors fixed to housings, casing, frames or circuit boards
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R24/00Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure
    • H01R24/60Contacts spaced along planar side wall transverse to longitudinal axis of engagement
    • H01R24/62Sliding engagements with one side only, e.g. modular jack coupling devices
    • H01R24/64Sliding engagements with one side only, e.g. modular jack coupling devices for high frequency, e.g. RJ 45

Definitions

  • the invention relates to a connector with the features of the preamble of claim 1.
  • the invention also relates to a connection device with such a connection plug and a corresponding connection socket.
  • Detachable signal-conducting connections are used, for example, in communications and data technology.
  • the signal-conducting connection can be designed as an optical connection or in the form of an electrical connection.
  • a connector is known with the help of which an optical connection can be established between two optical fibers.
  • the connector includes a connector housing into which the end piece of an optical cable can be inserted.
  • the optical cable has one or more cores in the form of optical fibers.
  • An optical connection module can be connected to one or more optical fibers.
  • the connection module has at least one ferrule to which an optical fiber can be attached.
  • the connection plug can be inserted into a receiving slot of an assigned connection socket.
  • a connection module is arranged in the receiving shaft, which also has at least one ferrule with an optical fiber of an optical cable attached to it.
  • the ferrule of the connection module rests on the end face of a ferrule of the connection module. This creates a signal-conducting optical connection between the connecting plug and the connecting socket.
  • the connector is also mechanically connected to the connection socket.
  • the plug housing of the connecting plug has a mechanical connecting element which interacts with a corresponding mechanical connecting element of a socket housing of the connecting socket. This allows the optical connection between the two optical fibers to be protected from disruptive environmental influences.
  • Such optical connectors can form an interface between an optical cable and an electro-optical circuit arrangement that carries an electro-optical converter. Using the electro-optical converter, the optical signals transmitted via the cable can be converted into electrical signals that can then be processed.
  • a mechanical protective device is used in the form of the plug and socket housings, which are connected to one another mechanically and advantageously in a splash-proof manner and which surrounded by signal-conducting connection and connection modules.
  • connection plug In some cases, establishing a detachable connection between a connection plug and a connection socket is quite simple by inserting the connection plug together with the connection module arranged therein into the receiving slot of the connection socket. When inserted into the shaft, the connection module is connected to the connection module in a signal-conducting manner. For this, however, it is necessary to determine the position of the connection module within the receiving shaft in advance, for example through suitable international standards for the connection socket.
  • connection module becomes more difficult if the position of the connection module within the receiving shaft is not exactly specified. There is a risk here that the connector housing will be inserted correctly into the receiving slot without simultaneously achieving a signal-conducting connection between the connection module and the connection module. The risk exists especially if the connection has to be made under harsh environmental conditions, especially under difficult weather conditions.
  • connection plug in which a connection module in the form of a plug part is surrounded in the circumferential direction by a plug housing which has a first housing part and a second housing part.
  • the first housing part is formed by overmolding the plug part with two housing sections, which consist of plastics of different hardness
  • the second housing part is formed by a union nut which is movable in the axial direction relative to the first housing part.
  • a first sealing ring is arranged between the two housing parts.
  • the second housing part in the form of the union nut surrounds a front end section of the first housing part, forming an annular space that is open at the end and in which a second sealing ring is arranged.
  • Further connectors with rear cable sealing elements are available from the US3816641 and the US2004242607 known.
  • the object of the present invention is to develop a connecting plug and a connecting device of the type mentioned in such a way that a connection between a connecting plug and a connecting socket can be reliably established in a simple manner, even under harsh environmental conditions, with the penetration of splash water into the area between the plug housing and the socket housing is avoided.
  • a mechanical and signal-conducting connection can be easily established with a connecting socket.
  • An end piece of a cable with at least one wire can be passed through the connector housing and the sealing element arranged thereon.
  • At least one connection module can be connected to the at least one wire.
  • the connection module can be connected to the corresponding connection module in a signal-conducting manner and the plug housing can be mechanically connected to the corresponding socket housing, with the sealing element being pressed against the cable and forming a tight seal of the plug housing.
  • the plug housing has a first and a second housing part, which are movable relative to one another.
  • the sealing element By moving the second housing part relative to the first housing part, the sealing element can be deformed in the direction of the central axis of the connecting plug. The result of this is that the sealing element is pressed between the plug housing and the cable due to the relative movement of the second housing part. As a result, the sealing element forms a splash-proof seal of the plug housing.
  • the second housing part can release the sealing element to such an extent that it can be displaced along the cable together with the plug housing. If the second housing part is moved into its second position, the sealing element is deformed in the direction of the central axis of the connecting plug, ie the sealing element is pressed against the cable and thereby seals the plug housing at the rear. By moving the second housing part back into its first position, the sealing element can be released again to such an extent that the plug housing can be moved along the cable again together with the sealing element. This makes it possible to provide the fitter with free access to the connection module so that he can do so easily In a signal-conducting manner, it can be connected to the corresponding connection module of the connection socket and can also be separated from the connection module again if necessary.
  • the second housing part surrounds the first housing part in the circumferential direction, forming an annular space that is open at the end and in which a sealing ring is arranged.
  • the annular space makes it possible to insert a connecting part of the socket housing into the annular space with the sealing ring in between when establishing the mechanical connection between the plug housing and the socket housing. This avoids the penetration of splash water into the area between the plug housing and the socket housing in a structurally simple manner.
  • the sealing element comprises a lateral surface with a first and a second lateral surface section, with a housing part resting on each of the lateral surface sections.
  • the first housing part and the second housing part each surround a section of the lateral surface of the sealing element.
  • the sealing element can be shaped in the radial direction by moving the second housing part relative to the first housing part. The sealing element can thus be pressed in the radial direction between the plug housing and the cable.
  • the sealing element is deformable in the axial direction by moving the second housing part relative to the first housing part.
  • the sealing element can be pressed between the first housing part and the second housing part by moving the second housing part from a first position into a second position.
  • the axial deformation of the sealing element can result in it also deforming in the direction of the central axis of the connector in order to reduce the load acting on the sealing element.
  • the sealing element is fixed to the first housing part. It is advantageous here if the sealing element is immersed in an end section of the first housing part.
  • the second housing part can be rotated relative to the first housing part about the central axis of the connecting plug.
  • the second housing part is axially displaceable relative to the first housing part.
  • the first housing part can form a guide for the second housing part.
  • the first housing part has an insertion section which can be inserted into a receiving shaft of the socket housing, and if the second housing part is movable, in particular axially displaceable, relative to the first housing part when the insertion section is inserted into the receiving shaft.
  • This allows the sealing element to be made in a simple manner are pressed between the plug housing and the cable when producing the mechanical connection between the plug housing and the socket housing.
  • the first housing part conveniently has a stop to limit the movement of the second housing part relative to the first housing part.
  • the second housing part can be moved into a second position in which it rests against the stop of the first housing part.
  • the second housing part can be moved in the axial direction against the stop of the first housing part.
  • the sealing element is designed as an elastically deformable sealing sleeve through which an end piece of the cable can be passed and which rests on the first housing part and the second housing part.
  • the simultaneous contact of the sealing sleeve on the first housing part and on the second housing part makes it possible to deform the sealing sleeve in a simple manner by moving the second housing part relative to the first housing part.
  • the sealing sleeve can surround the cable in the circumferential direction. If the second housing part is moved towards the first housing part, the sealing sleeve can be pressed between the plug housing and the cable.
  • the sealing element has a first and a second end surface, with a housing part resting on each of the end surfaces. This is particularly advantageous if the second housing part can be moved in the axial direction relative to the first housing part, because this means that the sealing element can be subjected to a pressure in the axial direction, under the effect of which it moves in the direction of the center line of the connecting plug, ie deformed towards the cable.
  • the first housing part has an insertion section that can be inserted into a receiving shaft of the connecting socket.
  • the insertion section advantageously comprises a stop for limiting the insertion movement of the insertion section into the receiving shaft.
  • the insertion section forms a depth stop, which interacts with an associated stop element of the connecting socket and ensures that when the insertion section is inserted into the receiving shaft, the connection module is not subjected to impermissibly high axial forces.
  • the insertion section is advantageously designed to be sleeve-shaped.
  • the insertion section is designed as a circular cylindrical jacket.
  • the insertion section surrounds at least a portion of the connection module in the circumferential direction and protects it from impairment.
  • the second housing part preferably has a mechanical connecting element facing the annular space for establishing a mechanical connection with the connecting socket.
  • the connecting element can, for example, be designed in the form of an internal thread that can be screwed onto an external thread of a connecting part of the connecting socket.
  • establishing the mechanical connection between the connecting plug and the connecting socket does not necessarily have to be done using a screw connection.
  • it can also be a bayonet connection are used or a so-called “push-pull connection”, as is known to those skilled in the art.
  • connection device with a connection plug of the type mentioned above and with a connection socket which has a socket housing with a receiving shaft in which a connection module designed to complement the connection module is arranged.
  • connection device is characterized in that the connection module can be connected to the connection module in a form-fitting manner, with an end-side insertion section of the first housing part of the connecting plug being insertable into the receiving shaft and the second housing part being movable relative to the first housing part and being mechanically connectable to the socket housing while simultaneously being pressed in Sealing element between the connector housing and the cable.
  • the second housing part of the plug housing can be moved back and forth between a first position and a second position relative to the first housing part. In the first position of the second housing part, the plug housing can be moved along the cable together with the sealing element.
  • the first housing part includes an insertion section on the front side, which can be inserted into the receiving shaft of the connecting socket. During or after insertion of the insertion section into the receiving shaft, the second housing part is movable relative to the first housing part and it can be mechanically connected to the socket housing, wherein the sealing element can be pressed between the plug housing and the cable.
  • connection device allows the production of a signal-conducting connection even under harsh environmental conditions, without it being necessary to precisely specify the position of the connection module within the socket housing. Rather, the fitter can first establish a signal-conducting connection between the connection module and the connection module, whereby he pushes the plug housing together with the first sealing element along the cable as far back, ie into the socket housing can move in the opposite direction until the connection module is easily accessible and can be connected to the connection module by producing a positive fit. The plug housing can then be moved together with the first sealing element in the direction of the socket housing. The connection module is thereby at least partially immersed in the plug housing and the second housing part of the plug housing can be mechanically connected to the socket housing.
  • a screw connection, a bayonet connection or a push-pull connection can be used for this purpose.
  • the second housing part of the connecting plug can assume its first position relative to the first housing part. If the plug housing is to be fixed relative to the cable, the second housing part can be moved into its second position, in which the sealing element can be pressed between the plug housing and the cable. This, on the one hand, fixes the connector housing relative to the cable and, on the other hand, prevents splash water from penetrating into the connector housing.
  • connection device 10 As an example of a connection device according to the invention, an optical connection device 10 is shown with a connection plug 12 and an associated connection socket 14.
  • the connection socket 14 is fixed to a housing wall 16 in the exemplary embodiment shown.
  • the housing wall 16 can, for example, form part of a housing (not shown in the drawing) of a circuit device, which can be positioned, for example, on a mobile radio antenna held on a transmission mast. Communication signals can be supplied to the circuit device via the connection device 10, and communication signals can be discharged from the circuit device.
  • the connecting socket 14 comprises a socket housing 18 with a shaft wall 20 designed in the manner of a sleeve, which surrounds a receiving shaft 22 and has an in Figure 1 schematically shown external thread 24 carries.
  • the shaft wall 20 is connected in one piece to a flange 26, which is held on the housing wall 16 by means of connecting screws 28 with the interposition of a sealing ring, not shown in the drawing.
  • the circular cylindrical shaft wall 20 surrounds a connection module 30, with a first annular space 32 extending between the shaft wall 20 and the connection module 30.
  • connection module 30 protrudes from a shaft bottom 34 of the receiving shaft 22 in the direction of the connecting plug 12.
  • a guide pin 40 held on the inside of the shaft wall 20 projects into the receiving shaft 22 in the radial direction.
  • the connecting plug 12 comprises a plug housing 42 with a first housing part 44 and a second housing part 46.
  • the connecting plug 12 has a sealing element, which in the illustrated embodiment is designed as an elastically deformable sealing sleeve 48.
  • the first housing part 44 like the second housing part 46, is designed in the manner of a sleeve.
  • the first housing part 44 protrudes with a circular cylindrical insertion section 50 in the direction of the connecting socket 14 over the second housing part 46.
  • the second housing part 46 projects beyond the first housing part 44 with an end section 52 in the direction facing away from the connecting socket 14.
  • the sealing sleeve 48 includes a central passage 54 through which an end piece of a cable 56 is passed.
  • the central passage 54 extends from a front end surface 58 of the sealing sleeve 48 facing the connecting bushing 14 to a rear end surface 60 facing away from the connecting bushing 14.
  • the front end surface 58 rests on an inner shoulder 62 of the first housing part 44 and the rear end surface 60 rests a radially inwardly pointing inner edge 64 of the second housing part 46.
  • the sealing sleeve 48 has a lateral surface 66 with a first lateral surface section 48 facing the connecting bushing 14, which merges into a second lateral surface section 70 facing away from the connecting bushing 14 via an outward-facing step.
  • the first lateral surface section 48 is from an end section 72 of the first housing part 44 surrounded and the second lateral surface section 70 is surrounded by the end section 52 of the second housing part 46.
  • the end section 72 of the first housing part 44 is adjoined in the direction of the connecting socket 14 by a middle section 74, to which a collar 78, which carries the circular cylindrical insertion section 50, is connected via a radially outwardly pointing step 76.
  • a holding section 80 adjoins the end section 52 of the second housing part 46 in the direction of the connecting socket 14 and forms a hexagon 82 on the outside.
  • the holding section 80 is adjoined via an extension 84 by a connecting section 86, which surrounds the first housing part 44 to form a second annular space 88 that is open at the end and carries an internal thread 90.
  • the collar 78 of the second housing part 46 is surrounded by a sealing ring 92.
  • connection module 94 In addition to the plug housing 42 and the sealing sleeve 48, the connecting plug 12 has a connection module 94, which in the illustrated embodiment is connected to an exposed wire 96 of the cable 56.
  • the connection module 94 has a locking wing 98 on the outside.
  • a front end region of the connection module 94 facing the connection socket 14 is designed as a connection section 100.
  • the connection section 100 comprises a ferrule 102, which is arranged at the free end of the wire 96.
  • the wire 96 surrounds an optical waveguide via which an optical signal can be transmitted.
  • the wire 96 could surround an electrical conductor through which an electrical signal can be transmitted.
  • the connection module 94 could then be designed to transmit electrical signals in that the connection element 100 carries an electrical contact element in a manner known per se, which is connected to the electrical conductor of the wire 96.
  • the second housing part 46 can be positioned relative to the first housing part 44 between a first one Figures 3 and 4 position shown and a second, in the Figures 5 and 6 can be moved back and forth in the position shown.
  • the second housing part 46 can be moved back and forth along the first housing part 44 in the axial direction, ie along the central axis 104 of the connecting plug 12. If the second housing part 46 is moved from the first to the second position, the elastic sealing sleeve 48 is deformed in the direction of the central axis 104. Conversely, the elastic sealing sleeve 48 relaxes when the second housing part 46 is moved into its first position.
  • the plug housing 42 together with the sealing sleeve 48 can be moved backwards along the cable 46, i.e. in the direction away from the connecting socket 14, so that the connecting module 94 can be connected to the wire 96.
  • the connection module 94 is easily accessible to the fitter.
  • the connection module can then be positively connected to the connection module 30 of the connection socket 14.
  • the locking wing 98 of the connection module 94 can be locked with a corresponding locking element of the connection module 30.
  • the plug housing 42 can then be moved forward together with the sealing sleeve 48 along the cable 56, i.e.
  • the insertion section 50 has a longitudinal slot 106 which receives the guide pin 40 when the insertion section 50 is inserted into the receiving shaft 22.
  • the insertion section 50 can be inserted into the receiving shaft 22 until an end edge 108 of the insertion section 50 abuts the shaft bottom 34 of the receiving shaft 22.
  • the front edge 108 of the insertion section 50 thus forms a stop which limits the insertion movement of the insertion section 50 into the receiving shaft 22.
  • the insertion section 50 When inserting the insertion section 50 into the receiving shaft 22, the insertion section 50 dips into the first annular space 32 between the shaft wall 20 and the connection module 30 and, together with the collar 78 of the first housing part 44 adjoining the insertion section 50, surrounds the rear end section of the connection module 94 , which protrudes from the connection module 30.
  • the second housing part 46 When inserting the insertion section 50 into the receiving shaft 22, the second housing part 46 can be moved forward from its first position into its second position and screwed onto the external thread 24 of the shaft wall 20 using the internal thread 90 of the connecting section 86. This creates a mechanical connection between the plug housing 42 and the socket housing 18 and at the same time the elastic sealing sleeve 48 is pressed between the plug housing 42 and the cable 56. This will be out Figure 6 clearly.
  • the sealing sleeve 48 is deformed in the axial and radial directions. This prevents splash water from entering the interior of the connector housing 42. Further protection against splash water is ensured by the sealing ring 92, which prevents splash water from penetrating through the interacting internal and external threads 90, 24.
  • a connection between the connecting plug 12 and the connecting socket 14 is thus established in such a way that a signal-conducting connection is first established between the connection module 94 and the connection module 30 and then the plug housing 42 is mechanically connected to the socket housing 18, at the same time using the The form-elastic sealing sleeve 48 ensures a tight seal on the cable side of the plug housing 42.
  • the fitter can, in a first step, separate the mechanical connection between the plug housing 42 and the socket housing 18 by removing the screw connection between them the plug housing 42 and the socket housing 48 and moves the second housing part 46 from its second position along the first housing 44 into its first position. In the first position, the second housing part 46 releases the sealing sleeve 48 to such an extent that the plug housing 42 can be moved along the cable 46 together with the sealing sleeve 48 in the direction away from the connecting socket 14, so that the fitter has good access to the connection module 94 receives and can detach this from the connection module 30.
  • connection device 10 is particularly suitable for use on mobile radio antennas.
  • Mobile phone antennas are exposed to strong climatic and mechanical stresses. Connecting and disconnecting cables to the corresponding circuit devices of the mobile radio antennas is quite easy using the connecting device 10 according to the invention, despite the adverse circumstances.

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  • Connector Housings Or Holding Contact Members (AREA)
  • Manufacturing Of Electrical Connectors (AREA)

Claims (9)

  1. Fiche de connexion permettant une connexion amovible avec une douille de connexion avec un boîtier de fiche (42) au niveau duquel est agencé un élément d'étanchéité (48) et avec au moins un module de connexion (94) pouvant être raccordé à au moins un fil conducteur d'un câble (56) pouvant être guidé à travers le boîtier de fiche (42) et l'élément d'étanchéité (48), dans laquelle le boîtier de fiche (42) peut être connecté mécaniquement à un boîtier de fiche (18) de la douille de connexion (14) et dans laquelle le module de connexion (94) peut être connecté à un module de raccordement (30) de la douille de connexion (14) de manière à acheminer un signal, dans laquelle le boîtier de fiche (42) présente une première partie de boîtier (44) et une seconde partie de boîtier (46) mobile par rapport à la première partie de boîtier (44), dans laquelle l'élément d'étanchéité (48) peut être déformé en direction d'un axe central (104) de la fiche de connexion (12) grâce au déplacement de la seconde partie de boîtier (46) par rapport à la première partie de boîtier (44), dans laquelle la seconde partie de boîtier (46) peut, dans une première position, libérer l'élément d'étanchéité (48) pour qu'il puisse être déplacé le long du câble (56) avec le boîtier de fiche (42), et dans laquelle l'élément d'étanchéité (48) est pressé contre le câble (56) lors du déplacement de la seconde partie de boîtier (46) dans une seconde position, caractérisée en ce que la seconde partie de boîtier (46) entoure la première partie de boîtier (44) dans la direction périphérique en formant un espace annulaire (88) ouvert du côté frontal et au sein duquel est agencée une bague d'étanchéité (92), et en ce que l'élément d'étanchéité (48) présente une surface d'enveloppe (66) avec des première et seconde parties de surface d'enveloppe (68, 70), dans laquelle respectivement une partie de boîtier (44, 46) est en contact avec des parties de surface d'enveloppe (68, 70).
  2. Fiche de connexion selon la revendication 1, caractérisée en ce que l'élément d'étanchéité (48) est fixé sur la première partie de boîtier (44).
  3. Fiche de connexion selon la revendication 1 ou 2, caractérisée en ce que la seconde partie de boîtier (46) peut être déplacée de manière axiale par rapport à la première partie de boîtier (44).
  4. Fiche de connexion selon l'une quelconque des revendications 1 à 3, caractérisée en ce que la première partie de boîtier (44) présente une butée (76) permettant de limiter le mouvement de la seconde partie de boîtier (46) par rapport à la première partie de boîtier (44).
  5. Fiche de connexion selon l'une quelconque des revendications 1 à 4, caractérisée en ce que l'élément d'étanchéité est conçu sous la forme d'une douille d'étanchéité (48) élastiquement déformable à travers laquelle une pièce terminale du câble (56) peut être guidée et qui est en contact avec la première partie de boîtier (44) et la seconde partie de boîtier (46).
  6. Fiche de connexion selon l'une quelconque des revendications 1 à 5, caractérisée en ce que l'élément d'étanchéité (48) présente des première et seconde surfaces d'extrémité (58, 60), dans laquelle respectivement une partie de boîtier (44, 46) est en contact avec les surfaces d'extrémité (58, 60).
  7. Fiche de connexion selon l'une quelconque des revendications 1 à 6, caractérisée en ce que la première partie de boîtier (44) présente une section d'insertion (50) pouvant être insérée dans un puits de réception (22) de la douille de connexion (14), avec une butée (108) permettant de limiter le mouvement d'insertion de la section d'insertion (50) dans le puits de réception (22).
  8. Fiche de connexion selon l'une quelconque des revendications précédentes, caractérisée en ce que la seconde partie de boîtier (46) présente un élément mécanique de connexion (90) tourné vers l'espace annulaire (88) et permettant d'établir une connexion mécanique avec la douille de connexion (14).
  9. Dispositif de connexion comprenant une fiche de connexion (12) selon l'une quelconque des revendications précédentes et une douille de connexion (14) présentant un boîtier de douille (18) muni d'un puits de réception (22) au sein duquel est agencé un module de raccordement (30) conçu de manière complémentaire au module de connexion (94), dans lequel le module de connexion (94) peut être connecté par complémentarité de forme au module de raccordement (30) et dans lequel une section d'insertion (50), située du côté frontal, de la première partie de boîtier (44) peut être insérée dans le puits de réception (22) et la seconde partie de boîtier (46) peut être déplacée par rapport à la première partie de boîtier (44) et peut être connectée de manière mécanique au boîtier de douille (18) en pressant de manière simultanée l'élément d'étanchéité (48) entre le boîtier de fiche (42) et un câble (56) guidé à travers le boîtier de fiche (42) et l'élément d'étanchéité (48).
EP11171810.2A 2010-08-24 2011-06-28 Fiche de connexion et dispositif de liaison pour la fabrication d'une liaison amovible Active EP2424048B1 (fr)

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WO2013025855A1 (fr) 2011-08-16 2013-02-21 Corning Cable Systems Llc Ensembles de câbles préalablement connectés pour applications intérieure/extérieure
ITTO20120573A1 (it) * 2012-06-27 2013-12-28 Tyco Electronics Amp Italia Srl Boccola di tenuta per cavo elettrico, e connettore elettrico dotato di tale boccola
EP2992371A2 (fr) 2013-05-02 2016-03-09 Corning Optical Communications LLC Ensembles de connecteur et procédés pour produire une étanchéité et un relâchement des contraintes
DE102016101255A1 (de) * 2016-01-25 2017-07-27 Neutrik Ag Verbinder
DE102016101254A1 (de) 2016-01-25 2017-07-27 Neutrik Ag Verbinder
CN114137455B (zh) * 2021-11-25 2024-02-27 中国科学院合肥物质科学研究院 一种安装在法兰面的电光转换装置

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US20040242607A1 (en) * 2001-06-13 2004-12-02 Jackson David Anthony Process for the preparation of azoxystrobin and analogues thereof
DE102008051468A1 (de) * 2008-10-13 2010-04-15 Weidmüller Interface GmbH & Co. KG Adaptergehäuse mit einem im Adaptergehäuse aufgenommenen Steckerteil und Verfahren zu dessen Herstellung

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EP2424048A3 (fr) 2016-07-20
EP2424048C0 (fr) 2024-01-17
DE102010039715A1 (de) 2012-03-01
DE102010039715B4 (de) 2012-04-26
DE102010039715B9 (de) 2012-08-02

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